Cheng E Y, Kay J, Hoka S, Bosnjak Z J, Coon R L, Seagard J L, Kampine J P
Department of Anesthesiology, Medical College of Wisconsin, Milwaukee, 53226.
Am J Physiol. 1989 Nov;257(5 Pt 2):R1004-11. doi: 10.1152/ajpregu.1989.257.5.R1004.
The effects of sustained lung inflation on systemic vascular capacitance (SVC), systemic vascular resistance (SVR), and cardiac sympathetic efferent nerve activity (SENA) were investigated in anesthetized dogs. By use of a total cardiopulmonary bypass, the lungs were inflated to tracheal pressures of 10, 15, and 20 mmHg. Tracheal pressures of 10, 15, and 20 mmHg increased system vascular capacitance by 1.4, 3.1, and 4.3 ml/kg and decreased systemic vascular resistance by 0.11, 0.15, and 0.16 mmHg.kg.min-ml-1, respectively, at low carotid sinus pressure (CSP) of 41 mmHg. SENA showed a concomitant decrease. Bilateral vagotomy attenuated the change in SVR by 69%, SVC by 62%, and SENA by 97% when lungs were inflated to a tracheal pressure of 20 mmHg at a low CSP. These results indicate that lung inflation causes a reflex induced increase in SVC as well as a decrease in both SVR and SENA. The lung inflation reflex is mediated primarily through vagal afferent nerve fibers with a small contribution from other afferent nerve pathways.
在麻醉犬中研究了持续肺充气对体循环血管容量(SVC)、体循环血管阻力(SVR)和心脏交感传出神经活动(SENA)的影响。通过使用全心肺转流,将肺充气至气管压力为10、15和20 mmHg。在颈总动脉窦压力(CSP)为41 mmHg的低水平时,气管压力为10、15和20 mmHg分别使体循环血管容量增加1.4、3.1和4.3 ml/kg,并使体循环血管阻力分别降低0.11、0.15和0.16 mmHg·kg·min-1·ml-1。SENA同时出现下降。当在低CSP下将肺充气至气管压力20 mmHg时,双侧迷走神经切断术使SVR的变化减弱69%,SVC的变化减弱62%,SENA的变化减弱97%。这些结果表明,肺充气引起反射性SVC增加以及SVR和SENA降低。肺充气反射主要通过迷走神经传入纤维介导,其他传入神经通路的贡献较小。